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Endothelial RhoA GTPase is essential for in vitro endothelial functions but dispensable for physiological in vivo angiogenesis

机译:内皮RhoA GTPase对体外内皮功能至关重要但对于体内生理性血管生成是必不可少的

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摘要

Imbalanced angiogenesis is a characteristic of several diseases. Rho GTPases regulate multiple cellular processes, such as cytoskeletal rearrangement, cell movement, microtubule dynamics, signal transduction and gene expression. Among the Rho GTPases, RhoA, Rac1 and Cdc42 are best characterized. The role of endothelial Rac1 and Cdc42 in embryonic development and retinal angiogenesis has been studied, however the role of endothelial RhoA is yet to be explored. Here, we aimed to identify the role of endothelial RhoA in endothelial cell functions, in embryonic and retinal development and explored compensatory mechanisms. In vitro, RhoA is involved in cell proliferation, migration and tube formation, triggered by the angiogenesis inducers Vascular Endothelial Growth Factor (VEGF) and Sphingosine-1 Phosphate (S1P). In vivo, through constitutive and inducible endothelial RhoA deficiency we tested the role of endothelial RhoA in embryonic development and retinal angiogenesis. Constitutive endothelial RhoA deficiency, although decreased survival, was not detrimental for embryonic development, while inducible endothelial RhoA deficiency presented only mild deficiencies in the retina. The redundant role of RhoA in vivo can be attributed to potential differences in the signaling cues regulating angiogenesis in physiological versus pathological conditions and to the alternative compensatory mechanisms that may be present in the in vivo setting.
机译:血管生成失衡是几种疾病的特征。 Rho GTPases调节多种细胞过程,例如细胞骨架重排,细胞运动,微管动力学,信号转导和基因表达。在Rho GTPases中,RhoA,Rac1和Cdc42最有特色。内皮Rac1和Cdc42在胚胎发育和视网膜血管生成中的作用已被研究,但是内皮RhoA的作用尚待探索。在这里,我们旨在确定内皮RhoA在内皮细胞功能,胚胎和视网膜发育中的作用,并探讨其补偿机制。在体外,RhoA参与细胞增殖,迁移和管形成,由血管生成诱导剂血管内皮生长因子(VEGF)和Sphingosine-1磷酸盐(S1P)触发。在体内,通过组成型和诱导型内皮RhoA缺乏症,我们测试了内皮RhoA在胚胎发育和视网膜血管生成中的作用。本构性内皮RhoA缺乏症虽然降低了生存期,但对胚胎发育无害,而诱导型内皮RhoA缺乏症仅在视网膜中表现出轻度缺陷。 RhoA在体内的多余作用可归因于在生理学与病理学条件下调节血管生成的信号提示中的潜在差异,以及在体内可能存在的替代补偿机制。

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